MRS Meetings and Events

 

EN07.08.03 2024 MRS Spring Meeting

Long-Range, Short-Wavelength and Ultrafast Heat Conduction driven by Three Plasmon Modes supported by Graphene

When and Where

Apr 24, 2024
2:15pm - 2:30pm

Room 327, Level 3, Summit

Presenter

Co-Author(s)

Jose Ordonez1,2,Yuriy Kosevich2,Masahiro Nomura2,1,Sebastian Volz1,2

CNRS1,The University of Tokyo2

Abstract

Jose Ordonez1,2,Yuriy Kosevich2,Masahiro Nomura2,1,Sebastian Volz1,2

CNRS1,The University of Tokyo2
By leveraging the unique two-dimensional structure of graphene with its ability to support the propagation of surface plasmon-polaritons, we demonstrate the existence and propagation of three hybrid modes of surface plasmon polaritons supported by two graphene monolayers coating a solid film. These modes propagate long distances with short wavelengths, which are suitable features to enhance the heat conduction along the film interfaces. For a Si film with a thickness of 15 nm and a length of 5 mm at 300 K, we find a plasmon thermal conductivity of 13.6 Wm−1K−1, which represents 67% (26%) of its phonon Si (Si+graphene) counterpart. This thermal energy appears due to the coupling of plasmons propagating at speeds comparable to the speed of light in vacuum. The plasmonic heat conduction driven by two-dimensional materials thus appears as a major and unexpected mechanism for controlling temperature in solid-state systems without changing their internal structure and at rates faster than the ones of phonons and electrons.

Keywords

interface | nanostructure

Symposium Organizers

Woochul Kim, Yonsei University
Sheng Shen, Carnegie Mellon University
Sunmi Shin, National University of Singapore
Sebastian Volz, The University of Tokyo

Publishing Alliance

MRS publishes with Springer Nature